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Numerical Aspects Related to the Dynamic Update of Anisotropic Permeability Field During the Transport of Nanoparticles in the Subsurface

机译:与地下表面纳米粒子传输过程中各向异性渗透场动态更新有关的数值方面

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摘要

Nanoparticles are particles that are between 1 and 100 nanometers in size. They present possible dangers to the environment due to the high surface to volume ratio, which can make the particles very reactive or catalytic. Furthermore, rapid increase in the implementation of nanotechnologies has released large amount of the nanowaste into the environment. In the last two decades, transport of nanoparticles in the subsurface and the potential hazard they impose to the environment have attracted the attention of researchers. In this work, we use numerical simulation to investigate the problem regarding the transport phenomena of nanoparticles in anisotropic porous media. We consider the case in which the permeability in the principal direction components will vary with respect to time. The interesting thing in this case is the fact that the anisotropy could disappear with time. We investigate the effect of the degenerating anisotropy on various fields such as pressure, porosity, concentration and velocities.
机译:纳米粒子是大小在1到100纳米之间的粒子。由于高的表面体积比,它们对环境存在潜在的危险,这可能会使颗粒具有很高的反应性或催化性。此外,纳米技术实施的迅速增加已经将大量的纳米废物释放到环境中。在过去的二十年中,纳米颗粒在地下的运输及其对环境的潜在危害吸引了研究人员的注意力。在这项工作中,我们使用数值模拟来研究关于纳米粒子在各向异性多孔介质中的传输现象的问题。我们考虑主方向磁导率随时间变化的情况。在这种情况下,有趣的是,各向异性会随着时间消失。我们研究了退化各向异性对压力,孔隙度,浓度和速度等各个领域的影响。

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